首页> 外文期刊>Developmental and Comparative Immunology: Ontogeny, Phylogeny, Aging: The Official Journal of the International Society of Developmental and Comparative Immunology >Cloning and characterization of DOPA decarboxylase in Litopenaeus vannamei and its roles in catecholamine biosynthesis, immunocompetence, and antibacterial defense by dsRNA-mediated gene silencing
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Cloning and characterization of DOPA decarboxylase in Litopenaeus vannamei and its roles in catecholamine biosynthesis, immunocompetence, and antibacterial defense by dsRNA-mediated gene silencing

机译:DSRNA介导的基因沉默的儿茶胺生物合成,免疫功能性和抗菌防御中的Dopaaeus Vannamei中DOPA脱羧酶的克隆与表征。

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摘要

Catecholamines (CAs) play critical roles in regulating physiological and immunological homeostasis in invertebrates and vertebrates under stressful environments. DOPA decarboxylase (DDC), an enzyme responsible for the decarboxylation step of dopamine synthesis, participates in neurotransmitter metabolism and innate immunity. In shrimp, two genes encoding CA-related enzymes, tyrosine hydroxylase and dopamine beta-hydroxylase, were further identified and characterized as neuroendocrine-immune regulators. In this study, full-length complementary DNA of DDC cloned from the thoracic ganglia of shrimp, Litopenaeus vannamei, (LvDDC) was predicted to encode a 452-amino acid protein with a pyridoxal-dependent decarboxylase-conserved domain, and this deduced protein of LvDDC was phylogenetically closely related to insect DDC. LvDDC messenger RNA expression was analyzed by a semiquantitative RT-PCR and a real-time quantitative RT-PCR and found to be abundant in the hepatopancreas and nervous system but at low levels in haemocytes, heart, stomach, and gills. To determine the role of LvDDC, double-stranded (ds)RNA was used for in vivo assessments. LvDDC-depleted shrimp revealed significant increases in the total haemocyte count, hyaline cells, granular cells, phenoloxidase activity, and respiratory bursts of haemocytes per unit of haemolymph, and phagocytic activity and clearance efficiency toward Vibrio alginolyticus. Further, decreased LvDDC mRNA expression was accompanied by decreases in dopamine, glucose, and lactate levels in haemolymph. In shrimp that received LvDDC-dsRNA for 3 days and were then challenged with V. alginolyticus, the survival rate of LvDDC-depleted shrimp was significantly higher than that of shrimp that received diethyl pyrocarbonate-water or non-targeted dsRNA. In conclusion, the cloned LvDDC was responsible for controlling dopamine synthesis, which then regulated physiological and immune responses in L. vannamei.
机译:儿茶酚胺(CAS)在压力环境下在无脊椎动物和脊椎动物中调节生理和免疫稳态的关键作用。 DOPA脱羧酶(DDC),一种负责多巴胺合成的脱羧步骤的酶,参与神经递质代谢和先天免疫。在虾中,进一步鉴定了编码有关Ca相关酶,酪氨酸羟化酶和多巴胺β-羟基β-羟化酶的两个基因,并表征为神经内分泌 - 免疫调节剂。在该研究中,预计从虾的胸部神经节克隆的DDC的全长互补DNA,预计将用吡哆醛依赖性脱羧酶保守结构域编码452-氨基酸蛋白,以及这种推导的蛋白质LVDDC与昆虫DDC有关。通过半定量的RT-PCR分析LVDDC信使RNA表达和实时定量RT-PCR,并发现肝脏和神经系统中的含量丰富,但在血细胞,心脏,胃和鳃中的低水平。为了确定LVDDC的作用,用于体内评估中的双链(DS)RNA。 LVDDC耗尽的虾显示出总血浆计数,透明细胞,颗粒细胞,酚氧化酶活性和每单位血液淋巴瘤的血细胞呼吸爆发的显着增加,以及吞噬血细胞活性和朝向腓酰亚氏菌的清除效率。此外,降低的LVDDC mRNA表达伴随着多巴胺,葡萄糖和乳酸乳酸水平的降低。在接受LVDDC-DSRNA的虾3天中,然后用V.Alginolyticus攻击,LVDDC耗尽虾的存活率显着高于接受乙基氟碳酸酯 - 水或非靶向DSRNA的虾的存活率。总之,克隆的LVDDC负责控制多巴胺合成,然后在L.Vannamei中调节生理和免疫应答。

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